ATA5743P6-TGQY Atmel, ATA5743P6-TGQY Datasheet - Page 6

IC RCVR ASK/FSK 600KHZ 20SOIC

ATA5743P6-TGQY

Manufacturer Part Number
ATA5743P6-TGQY
Description
IC RCVR ASK/FSK 600KHZ 20SOIC
Manufacturer
Atmel
Datasheet

Specifications of ATA5743P6-TGQY

Frequency
300MHz ~ 450MHz
Sensitivity
-110dBm
Data Rate - Maximum
10 kBaud
Modulation Or Protocol
ASK, FSK
Applications
RKE, Telemetering, Security Technology
Current - Receiving
7.5mA
Data Interface
PCB, Surface Mount
Antenna Connector
PCB, Surface Mount
Voltage - Supply
4.5 V ~ 5.5 V
Operating Temperature
-40°C ~ 105°C
Package / Case
20-SOIC (0.300", 7.50mm Width)
Operating Frequency (max)
450000kHz
Operating Temperature (min)
-40C
Operating Temperature (max)
105C
Operating Temperature Classification
Industrial
Operating Supply Voltage (min)
4.5V
Operating Supply Voltage (typ)
5V
Operating Supply Voltage (max)
5.5V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-
Memory Size
-
Lead Free Status / Rohs Status
Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ATA5743P6-TGQY
Manufacturer:
ATMEL
Quantity:
222
Part Number:
ATA5743P6-TGQY
Manufacturer:
ATMEL/爱特梅尔
Quantity:
20 000
6
ATA5743
This is described by the following formulas:
The relation is designed to achieve the nominal IF frequency of f
F o r ap p l i c a ti o n s w h e re f
f
f
ferent conditions.
The RF input either from an antenna or from a generator must be transformed to the RF input
pin LNA_IN. The input impedance of that pin is provided in the electrical parameters. The para-
sitic board inductances and capacitances also influence the input matching. The RF receiver
ATA5743 exhibits its highest sensitivity at the best signal-to-noise ratio (SNR) in the LNA.
Hence, noise matching is the best choice for designing the transformation network.
A good practice when designing the network is to start with power matching. From that starting
point, the values of the components can be varied to some extent to achieve the best sensitivity.
If a SAW is implemented into the input network, a mirror frequency suppression of P
can be achieved. There are SAWs available that exhibit a notch at f = 2 MHz. These SAWs
work best for an intermediate frequency of f
improved by using a SAW. In typical automotive applications, a SAW is used.
Figure 4-2 on page 7
f
50 without a SAW. The input matching networks shown in
ence networks for the parameters given in the table
Table 4-1.
MODE
MODE
RF
IF
RF
Conditions
f
f
300 MHz < f
MODE = 0
365 MHz < f
MODE = 1
RF
RF
is then dependent on the logical level at pin MODE and on f
= 433.92 MHz, using a SAW.
= 433.92 MHz, MODE must be set to “1”. For other RF frequencies, f
= 315 MHz, MODE = 0
= 433.92 MHz, MODE = 1
=
=
0 (USA) : f
1 (Europe) : f
RF
RF
Calculation of LO and IF Frequency
< 365 MHz,
< 450 MHz,
IF
IF
=
shows a typical input matching network, for f
--------- -
314
=
f
LO
----------------- -
432.92
R F
f
LO
= 3 15 M H z , M O D E m us t be s e t t o “0 ” . In t he c a s e o f
Figure 4-3 on page 7
Local Oscillator Frequency
f
f
f
f
LO
LO
LO
LO
= 314 MHz
= 432.92 MHz
=
=
------------------- -
1
--------------------------- -
1
+
+
f
RF
--------- -
314
----------------- -
432.32
f
RF
1
1
IF
= 1 MHz. The selectivity of the receiver is also
“Electrical Characteristics” on page
illustrates an according input matching to
Figure 4-3 on page 7
RF
IF
.
Intermediate Frequency
f
f
= 1 MHz for most applications.
f
f
Table 4-1
IF
IF
IF
IF
= 1 MHz
= 1 MHz
=
=
--------- -
314
----------------- -
432.92
f
LO
IF
f
LO
is not equal to 1 MHz.
RF
summarizes the dif-
= 315 MHz and
4839B–RKE–08/05
are the refer-
Ref
= 40 dB
33.

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